US6754508B1ExpiredUtility

Multiple-band wireless transceiver with quadrature conversion transmitter and receiver circuits

Assignee: NAT SEMICONDUCTOR CORPPriority: Jan 25, 2001Filed: Jan 25, 2001Granted: Jun 22, 2004
Est. expiryJan 25, 2021(expired)· nominal 20-yr term from priority
Inventors:Hak Ming Pau
H04B 1/405
81
PatentIndex Score
39
Cited by
16
References
15
Claims

Abstract

An architecture for a multiple-band wireless transceiver with quadrature conversion receiver and transmitter circuits. Dual dedicated local oscillators provide the necessary frequency up and down conversion signals for the transmitter and receiver circuits, respectively, thereby allowing for duplex transmit and receive operations. Each of the transmitter and receiver circuits include multiple, e.g., three, signal paths for providing multiple-band operation. In the transmitter, the outgoing baseband data is quadrature modulated. The modulated data signals are then frequency up converted using another quadrature signal mixing process which avoids any need for image signal rejection filters within the signal transmission path. Similarly, in the receiver, quadrature signal mixing is used for the frequency down conversion process, thereby avoiding any need for image signal rejection filters within the signal reception path. The down-converted data signals are then quadrature demodulated to produce the incoming baseband data.

Claims

exact text as granted — not AI-modified
What is claimed is:  
     
       1. An apparatus including a multiple-band wireless transceiver with quadrature conversion transmitter and receiver circuits, comprising: 
       a plurality of outgoing data terminals for conveying a plurality of baseband outgoing data signals;  
       a plurality of incoming data terminals for conveying a plurality of baseband incoming data signals;  
       a quadrature signal source that provides first and second pluralities of lower frequency quadrature signals;  
       transmitter signal generator circuitry that provides at least one local transmitter signal;  
       transmitter signal conversion circuitry, coupled to said transmitter signal generator circuitry, that receives and converts said at least one local transmitter signal to provide a plurality of transmitter conversion signals;  
       receiver signal generator circuitry that provides at least one local receiver signal;  
       receiver signal conversion circuitry, coupled to said receiver signal generator circuitry, that receives and converts said at least one local receiver signal to provide a plurality of receiver conversion signals;  
       quadrature modulation circuitry, coupled to said quadrature signal source and said plurality of outgoing data terminals, that receives and modulates said first plurality of lower frequency quadrature signals with said plurality of baseband outgoing data signals to provide a plurality of modulated outgoing data signals;  
       up conversion circuitry, coupled to said transmitter signal conversion circuitry and said quadrature modulation circuitry, that receives and selectively up converts said plurality of modulated outgoing data signals with said plurality of transmitter conversion signals to provide a plurality of higher frequency outgoing data signals;  
       down conversion circuitry, coupled to said receiver signal conversion circuitry, that receives and selectively down converts a plurality of higher frequency incoming data signals with said plurality of receiver conversion signals to provide a plurality of lower frequency incoming data signals; and  
       quadrature demodulation circuitry, coupled to said down conversion circuitry and said plurality of incoming data terminals, that receives and demodulates said plurality of lower frequency incoming data signals with said second plurality of lower frequency quadrature signals to provide said plurality of baseband incoming data signals.  
     
     
       2. The apparatus of  claim 1 , wherein said quadrature signal source comprises phase splitting circuitry that receives and phase-splits a source signal to provide said first and second pluralities of lower frequency quadrature signals. 
     
     
       3. The apparatus of  claim 2 , wherein said quadrature signal source further comprises an oscillator circuit, coupled to said phase splitting circuitry, that provides said source signal. 
     
     
       4. The apparatus of  claim 3 , wherein: 
       said transmitter signal generator circuitry comprises first phase lock loop circuitry, coupled to said oscillator circuit, that uses said source signal as a first reference signal to generate said at least one local transmitter signal; and  
       said receiver signal generator circuitry comprises second phase lock loop circuitry, coupled to said oscillator circuit, that uses said source signal as a second reference signal to generate said at least one local receiver signal.  
     
     
       5. The apparatus of  claim 1 , wherein: 
       said transmitter signal generator circuitry comprises first phase lock loop circuitry; and  
       said receiver signal generator circuitry comprises second phase lock loop circuitry.  
     
     
       6. The apparatus of  claim 1 , wherein: 
       said transmitter signal conversion circuitry comprises first phase splitting circuitry that receives and phase-splits said at least one local transmitter signal to provide a first plurality of pairs of higher frequency quadrature signals as said plurality of transmitter conversion signals; and  
       said receiver signal conversion circuitry comprises second phase splitting circuitry that receives and phase-splits said at least one local receiver signal to provide a second plurality of pairs of higher frequency quadrature signals as said plurality of receiver conversion signals.  
     
     
       7. The apparatus of  claim 6 , wherein said up conversion circuitry comprises: 
       filter circuitry that filters said plurality of modulated outgoing data signals to provide a plurality of filtered modulated outgoing data signals; and  
       signal mixing circuitry, coupled to said filter circuitry, that selectively up converts said plurality of filtered modulated outgoing data signals with said plurality of transmitter conversion signals to provide said plurality of higher frequency outgoing data signals.  
     
     
       8. The apparatus of  claim 6 , wherein said down conversion circuitry comprises: 
       signal mixing circuitry that selectively down converts said plurality of higher frequency incoming data signals with said plurality of receiver conversion signals to provide said plurality of lower frequency incoming data signals; and  
       filter circuitry, coupled to said signal mixing circuitry, that filters said plurality of lower frequency incoming data signals.  
     
     
       9. The apparatus of  claim 1 , wherein said quadrature modulation circuitry comprises: 
       first signal mixing circuitry that modulates one of said first plurality of lower frequency quadrature signals with one of said plurality of baseband outgoing data signals to provide one of said plurality of modulated outgoing data signals; and  
       second signal mixing circuitry that modulates another of said first plurality of lower frequency quadrature signals with another of said plurality of baseband outgoing data signals to provide another of said plurality of modulated outgoing data signals.  
     
     
       10. The apparatus of  claim 1 , wherein said up conversion circuitry comprises: 
       filter circuitry that filters said plurality of modulated outgoing data signals to provide a plurality of filtered modulated outgoing data signals; and  
       signal mixing circuitry, coupled to said filter circuitry, that selectively up converts said plurality of filtered modulated outgoing data signals with said plurality of transmitter conversion signals to provide said plurality of higher frequency outgoing data signals.  
     
     
       11. The apparatus of  claim 1 , wherein said down conversion circuitry comprises: 
       signal mixing circuitry that selectively down converts said plurality of higher frequency incoming data signals with said plurality of receiver conversion signals to provide said plurality of lower frequency incoming data signals; and  
       filter circuitry, coupled to said signal mixing circuitry, that filters said plurality of lower frequency incoming data signals.  
     
     
       12. The apparatus of  claim 1 , wherein said quadrature demodulation circuitry comprises: 
       first signal mixing circuitry that demodulates one of said plurality of lower frequency incoming data signals with one of said second plurality of lower frequency quadrature signals to provide one of said plurality of baseband incoming data signals; and  
       second signal mixing circuitry that demodulates one of said plurality of lower frequency incoming data signals with another of said second plurality of lower frequency quadrature signals to provide another of said plurality of baseband incoming data signals.  
     
     
       13. The apparatus of  claim 1 , further comprising signal routing circuitry, coupled to said up conversion circuitry and said down conversion circuitry, that selectively conveys said plurality of higher frequency outgoing data signals and said plurality of higher frequency incoming data signals. 
     
     
       14. An apparatus including a multiple-band wireless transceiver with quadrature conversion transmitter and receiver circuits, comprising: 
       outgoing data means for conveying a plurality of baseband outgoing data signals;  
       incoming data means for conveying a plurality of baseband incoming data signals;  
       quadrature signal source means for providing first and second pluralities of lower frequency quadrature signals;  
       transmitter signal generator means for providing at least one local transmitter signal;  
       transmitter signal conversion means for receiving and converting said at least one local transmitter signal and providing a plurality of transmitter conversion signals;  
       receiver signal generator means for providing at least one local receiver signal;  
       receiver signal conversion means for receiving and converting said at least one local receiver signal and providing a plurality of receiver conversion signals;  
       quadrature modulation means for receiving and modulating said first plurality of lower frequency quadrature signals with said plurality of baseband outgoing data signals and thereby providing a plurality of modulated outgoing data signals;  
       up conversion means for receiving and selectively up converting said plurality of modulated outgoing data signals with said plurality of transmitter conversion signals and thereby providing a plurality of higher frequency outgoing data signals;  
       down conversion means for receiving and selectively down converting a plurality of higher frequency incoming data signals with said plurality of receiver conversion signals and thereby providing a plurality of lower frequency incoming data signals; and  
       quadrature demodulation means for receiving and demodulating said plurality of lower frequency incoming data signals with said second plurality of lower frequency quadrature signals and thereby providing said plurality of baseband incoming data signals.  
     
     
       15. A method for performing multiple-band wireless signal transmission and reception using quadrature signal conversion, comprising: 
       generating first and second pluralities of lower frequency quadrature signals;  
       generating at least one local transmitter signal;  
       converting said at least one local transmitter signal and thereby generating a plurality of transmitter conversion signals;  
       generating at least one local receiver signal;  
       converting said at least one local receiver signal and thereby generating a plurality of receiver conversion signals;  
       quadrature modulating said first plurality of lower frequency quadrature signals with said plurality of baseband outgoing data signals and thereby generating a plurality of modulated outgoing data signals;  
       selectively up converting said plurality of modulated outgoing data signals with said plurality of transmitter conversion signals and thereby generating a plurality of higher frequency outgoing data signals;  
       selectively down converting a plurality of higher frequency incoming data signals with said plurality of receiver conversion signals and thereby generating a plurality of lower frequency incoming data signals; and  
       quadrature demodulating said plurality of lower frequency incoming data signals with said second plurality of lower frequency quadrature signals and thereby generating said plurality of baseband incoming data signals.

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